PubMed Health⌕ Search

Biomedical subjects

G Rosti

Publications and source records attributed to G Rosti.

At least 91 records · Page 5Linked to original sources

Immunologic and clinical modifications following low-dose subcutaneous administration of rIL-2 in non-Hodgkin's lymphoma patients after autologous bone marrow transplantation.

In order to induce a therapeutic immunomodulatory activity, 11 patients with high-grade non-Hodgkin's lymphoma (HG-NHL) at a median of 42 days after autologous bone marrow transplantation (ABMT) received recombinant interleukin-2 (rIL-2) subcutaneously at a dose of 2 international megaunits (IMU)/m2 every other day for 2 weeks and then 3 IMU/m2 twice a week for 1 year. Immunological studies, including T and natural killer (NK) cell subset assessment, together with functional assay, such as NK and CD16-mediated cytotoxic activities, were performed before therapy, after 2 weeks and then monthly. Phenotypic analyses showed a significant and persistant (P = 0.001) increase in the proportion and absolute number of total lymphocytes and, particularly of both CD16 and CD56 NK cells, from pre-treatment values of 14 and 18% to 30 and 38% respectively, recorded after 6 months of therapy. No changes were observed in CD25 (p55)-positive cells, while a significant increase from 13 to 33% (after 6 months) was observed in CD122-positive cells. Furthermore, rIL-2 administration led to an enhancement of NK activity even at the lowest effector:target ratio and of CD16-mediated cytotoxic activity. Clinical tolerance was acceptable with moderate fever and fluid retention observed only at the onset of rIL-2 treatment. None of the patients have progressed with a median follow-up of 22 months (range 10-42 months) after starting therapy. In addition, two patients with a residual disease after ABMT, one in the liver and the second in the lymph nodes, obtained a complete response after 10 and 7 months of rIL-2 therapy, respectively. These preliminary data suggest that the infusion of low-dose rIL-2 s.c. after ABMT is safe and well tolerated and can selectively increase the NK cell number and function. Additional patients are needed in order to assess the impact of these immunological changes on relapse-free survival after ABMT for HG-NHL.

Adjuvants, Immunologic↗

Increased plasma level of vascular endothelial glycoprotein thrombomodulin as an early indicator of endothelial damage in bone marrow transplantation.

We investigated the nature of hemostatic alterations occurring after bone marrow transplantation. In 45 patients, we evaluated the coagulation parameters, naturally occurring anticoagulants and thrombomodulin at days +15 and +22 after conditioning therapy. It was observed that endothelial cell damage is a central pathogenetic mechanism in some BMT complications. The increased plasma level of thrombomodulin after conditioning therapy is therefore discussed as a marker of endothelial cell injury. At day +15 a significant increase of fibrinogen from 276.1 mg/dI to 389.1 mg/dI was observed, while the natural anticoagulants all decreased significantly. Eleven patients with clinical complications related to endothelial damage had a significant thrombomodulin increase which, in uncomplicated patients, remained unchanged or resulted in lower than baseline values. Analysis of the data shows a strong correlation between clinical findings, reflecting endothelial cell injury and thrombomodulin increase when the increment is > or = 30%. We found a significant elevation in thrombomodulin in 70% of clinical complications related to endothelial cell damage namely: septicemia, GVHD, VOD. There were four cases (or 9%) of false positive data, and only two (or 4.5%) of false negative results. We therefore propose thrombomodulin assessment as a valid parameter to monitor chemotherapy toxicity-related complications.

Adolescent↗

Paclitaxel and radiotherapy in the treatment of advanced non-small cell lung cancer.

Sixteen patients affected by previously untreated non-small cell lung cancer stage IIIB or IV received radiotherapy and paclitaxel (Taxol; Bristol-Myers Squibb Company, Princeton, NJ) as radiation sensitizer in an open, nonrandomized pilot study to find the maximum tolerated dose of the drug concomitantly combined with radiation. Paclitaxel was given as a 3-hour infusion once weekly at a dose escalating by 10 mg/m2/wk for every patient cohort, starting at 40 mg/m2/wk and continuing to 80 mg/m2/wk. Conventionally fractionated (2 Gy/d for 5 d/wk for 5 weeks) radiotherapy up to 50 Gy was delivered to the primary tumor and mediastinum with a 6-mv linear accelerator. Hematologic toxicity has been very low; grade 3 World Health Organization nonhematalogic toxicities have been registered only at the 80 mg/m2/wk dose level. Seven patients achieved a major response, three patients had stable disease, and five patients progressed; three patients are still responding, whereas the others are relapsed and five of them died of disease. The median duration of response was 5 months. Paclitaxel may be safely combined with radiation at the maximum tolerated dose of 70 mg/m2/wk. Our data seem to confirm the radiosensitizing effect of the drug, independent of the dose level. Low doses of paclitaxel given as a single agent are unable to control metastatic disease.

Adult↗

Phase I/II study of paclitaxel and radiotherapy in non-small cell lung cancer.

To establish the maximum tolerated dose of paclitaxel (Taxol; Bristol-Myers Squibb Company, Princeton, NJ) as a radiosensitizing agent and to determine its optimal therapeutic dose when combined with conventionally fractionated radiotherapy in the treatment of non-small cell lung cancer, a phase I/II study was undertaken in 16 treatment-naive patients. Beginning at 40 mg/m2/wk with doses escalated in 10 mg/m2 increments until dose-limiting toxicity was encountered, paclitaxel was administered over 3 hours to successive three-patient cohorts. Radiotherapy (2 Gy/d x 5 d/wk; maximum total dose, 50 Gy) was delivered after the paclitaxel infusion. Treatment continued for 5 successive weeks. All 16 patients are evaluable for response and toxicity. Hematologic toxicity was low, with red blood cells and platelets remaining stable and leukocyte decreases (mean, 60%) attributed to radiotherapy. Nonhematologic toxicity included grade 2/3 esophagitis and neurologic sequelae. Responses were noted at all paclitaxel dose levels, including two complete and five partial responses, but the median time to progression was only 5 months. Paclitaxel may be combined safely with radiotherapy without major toxicity, and the radiosensitizing effect of paclitaxel was evident at all doses.

Adult↗

Epirubicin + G-CSF as peripheral blood progenitor cells (PBPC) mobilising agents in breast cancer patients.

BACKGROUND: In an attempt to mobilise peripheral blood progenitor cells (PBPC) from patients with breast cancer, Epirubicin supported with G-CSF was tested. Another aim of the study was also to optimize the procedure so that the number of leukapheresis procedures could be reduced. These cells were subsequently reinfused as hematologic rescue after high-dose chemotherapy programs. PATIENTS AND METHODS: Twenty-nine patients received Epirubicin 150 mg/sqm + G-CSF at the dose of 5 micro/kg/bw s.c. daily, starting 24 hours after chemotherapy. Twelve had metastatic, eight inflammatory or locally advanced disease, and nine were treated in an adjuvant setting. RESULTS: The median numbers of CD34+ cells and CFU-GM collected were 12.9 x 106/kg/bw and 111.7 x 10(4)/kg/bw, respectively. The mean number of leukapheresis procedures per patient was 1.8 +/- 0.3 (range 1-3), and the mean day of the first procedure was the tenth +/- 1 (range 8-13) after Epirubicin. The minimum required target for one high-dose procedure was collected in a single leukapheresis in 13 patients. Moreover, in 9 cases one procedure was adequate for two high-dose courses (i.e. > or = 10 x 10(6)/kg/bw CD34+ cells). Response to Epirubicin was evaluable in 14/20 cases, with a response rate of 50%. CONCLUSIONS: Epirubicin delivered at 150 mg/sqm is a very effective mobilising agent for breast cancer patients; to ameliorate the response rate other active drug(s) should be added.

Adult↗

Proliferative response of human marrow myeloid progenitor cells to in vivo treatment with granulocyte colony-stimulating factor alone and in combination with interleukin-3 after autologous bone marrow transplantation.

We have recently reported that the hematologic recovery of patients with non-Hodgkin's lymphoma (NHL) and Hodgkin's disease (HD) undergoing autologous bone marrow transplantation (BMT) is significantly faster when recombinant human interleukin-3 (rhIL-3) is combined with recombinant human granulocyte colony-stimulating factor (rhG-CSF) in comparison with patients receiving G-CSF alone. In this paper, we studied the kinetic response and concentration of BM progenitor cells of 17 patients with lymphoid malignancies submitted to autologous BMT and treated with the G-CSF/IL-3 combination. The results were compared with those of five lymphoma patients receiving the same pretransplant conditioning regimen followed by G-CSF alone. rhG-CSF was administered as a single subcutaneous (sc) injection at the dose of 5 micrograms/kg/d from day 1 after reinfusion of autologous stem cells; rhIL-3 was added from day 6 at the dose of 10 micrograms/kg/d sc (overlapping schedule). In both groups (G-CSF- and G-CSF/IL-3-treated patients), cytokine administration was discontinued when the absolute neutrophil count (ANC) was >0.5 x 10(9)/L of peripheral blood (PB) for 3 consecutive days. After treatment with the CSF combination, the percentage of marrow colony-forming units-granulocyte/macrophage (CFU-GM) and erythroid progenitors (BFU-E) in S phase of the cell cycle increased from 9.3 +/- 2% to 33.3 +/- 12% and from 14.6 +/- 3% to 35 +/- 6%, respectively (p < 0.05). Similarly, we observed an increased number of actively cycling megakaryocyte progenitors (CFU-MK and BFU-MK). Conversely, G-CSF augmented the proliferative rate of CFU-GM (22.6 +/- 0.6% compared to a baseline value of 11.5 +/- 3%; p < 0.05) but not of BFU-E, CFU-MK, or BFU-MK, and the increase of S-phase CFU-GM was significantly lower than that observed in the posttreatment samples of patients receiving IL-3 in addition to G-CSF. The frequency of hematopoietic precursors in the BM, expressed as the number of colonies formed per number of cells plated, was unchanged or slightly decreased in both groups of patients. Because of the increase in marrow cellularity, however, a significant augmentation of the absolute number of both CFU-GM (3605 +/- 712/mL BM vs. 2213 +/- 580/mL; p < 0.05) and BFU-E (4373 +/- 608/mL vs. 3027 +/- 516/mL; p < 0.05) was reported after treatment with G-CSF/IL-3 but not G-CSF alone. Similarly, administration of the cytokine combination resulted in a higher number of CD34+ cells/mL BM, and their concentration was significantly greater than that observed in the posttreatment samples of G-CSF patients. Finally, we investigated the responsiveness to CSFs, in vitro, of highly enriched CD34+ cells, collected after priming with G-CSF in vivo (i.e., after 5 days of G-CSF administration). Our results demonstrated that pretreatment with G-CSF modified the response of BM cells to subsequent stimulation with additional CSFs. The results presented in this paper indicate that in vivo administration of two cytokines increases the proliferative rate and concentration of BM progenitor cells to a greater degree than G-CSF alone. These results support the role of growth factor combinations for accelerating hematopoietic recovery after high-dose chemotherapy.

Bone Marrow Cells↗

FLAG (fludarabine+cytosine arabinoside+G-CSF) induces complete remission in acute-phase chronic myeloid leukaemia: a case report.

The adenine nucleoside analogue fludarabine phosphate in combination with cytosine-arabinoside (Ara-C) and granulocyte-colony stimulating factor (G-CSF) has recently proved effective in the treatment of poor-prognosis acute non-lymphoid leukaemia. We used this triple combination in a case of Ph1+ chronic myeloid leukaemia (CML) unresponsive to alpha interferon that had progressed to acute phase after 5 months of treatment with 6-mercaptopurine plus hydroxyurea. The patient was treated with four courses of fludarabine 30 mg/m2 + Ara-C 2 g/m2 (days 1-5) and G-CSF (from day 0 to polymorphonuclear (PMN) recovery). Bone marrow blasts decreased from 80% to less than 5%, and karyotyping showed a progressive clearance of Ph1+ metaphases (from 100% to 9% after the fourth course). The patient is presently receiving autologous bone marrow transplantation (ABMT). This therapeutic success in a patient for whom conventional treatment would usually be ineffective makes this combination worthy of further studies, in view of its wider use as a preparative regimen to ABMT in CML.

Adult↗

Prognostic factors and survival in non-Hodgkin's lymphomas: the experience of the Istituto Oncologico Romagnolo (IOR).

In an attempt to evaluate natural history, prognostic factors and survival, the data of 340 patients with NHL were collected. 267 patients were evaluable for the analysis of prognostic factors and survival. The tumor samples were reviewed and reclassified according to the Kiel classification. At completion, 180 patients were affected by low-grade (LG)-NHL and 87 patients had high-grade (HG)-NHL. Numerous potential prognostic factors were analysed in univariate and multivariate analyses. Globally 154 patients (57.4%) obtained complete remission (CR) and 65 patients (24.3%) partial remission (PR). The response rate was similar in LG and HG-NHL groups. 5-years survival was 52% for all patients (53% in LG-NHL and 44% in HG-NHL). Median survival was 62 months in LG-NHL and 38 months in HG-NHL (p = n.s.). At the univariate analysis overall survival (OS) in LG-NHL was favourably influenced by age < 65 years (p = 0.004), performance status > 80 (p < 0.02), early clinical stage (p < 0.001), absence of systemic symptoms (p < 0.001), low serum LDH (p < 0.001) and achievement of CR (p < 0.001), while in the HG-NHL only by age (p = 0.005) and achievement of CR (p < 0.001). The multivariate analysis showed early clinical stage, low serum LDH, absence of systemic symptoms and achievement of CR as independent prognostic factors in LG-NHL and only achievement of CR in HG-NHL.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Autoimmune neutropenia after unrelated bone marrow transplantation.

A 26-year-old male with Ph+ chronic myeloid leukemia, recipient of an HLA-compatible marrow from a matched unrelated donor, showed good platelet engraftment coupled with poor neutrophil recovery. On day +33 the presence of surface-bound anti-neutrophil antibodies was detected by immunofluorescence. At variance with previously reported cases, the WBC count improved without any specific treatment, and the test became negative on day +42.

Adult↗

Acute myeloid leukemia from diagnosis to bone marrow transplantation: experience from a single centre.

We analysed the use of allogeneic bone marrow transplantation (BMT) in the treatment of acute myelogenous leukemia (AML). We evaluated 271 adult patients with newly diagnosed AML treated here between 1983 and 1992; 113 patients (42%) were eligible for BMT because of their age (< 45 years until 1986 and < 50 years later). Of these, HLA typing was performed on 81 patients (72%); 32 patients were not typed (19 had no sibling, 8 had a primary refractory leukemia, 3 died during induction, 1 had important previous toxicity and for one patient there was no recorded reason). Of the 81 typed, 36 patients (44.4%) were found to have an HLA-matched sibling donor and 21 (25%) underwent BMT (8% of the total population); 15 patients did not undergo BMT (6 relapsed before transplantation and did not obtain a second remission, 3 declined the procedure, 1 died during induction, 1 had positive MLR, 1 had positive MLR and HCV hepatitis, 1 was a drug addict with HCV hepatitis, 1 had previous organ toxicity, 1 was psychotic). These data show that only a small fraction of unselected patients with AML can undergo BMT. Such findings make the comparison of BMT with other types of post-remission therapy more complex.

Adolescent↗

Toxicity of high-dose busulphan and cyclophosphamide as conditioning therapy for allogeneic bone marrow transplantation in adults with haematological malignancies.

The toxicity of the conditioning regimen high-dose busulfan (BU) 16 mg/kg followed by cyclophosphamide (CY) 200 mg/kg has been analysed in 60 adult patients (mean age 36 +/- 9 years) with haematological malignancies, a third of whom had advanced disease, all received the graft from fully HLA-identical siblings. Significant nausea and vomiting were rare during BU administration but occurred in 44% of the patients with CY. Severe mucositis occurred in 30% of patients. Haemorrhagic cystitis occurred in 16% of patients; interstitial pneumonia occurred in 3 patients and was fatal in one. Veno-occlusive disease of the liver occurred in 2 patients and was fatal in one: however, increase of bilirubin of at least twice the baseline value and/or isolated weight gain > 5% of pre-transplant value occurred in 28% of patients. These signs of liver toxicity disappeared in all patients after appropriate therapy. Normalisation of bilirubin levels took twice as long as normalisation of body weight: median 35 and 18 days, respectively. Hyperpigmentation of the skin, mainly involving flexural and pressure areas, occurred in 47% of patients and was manageable topically. Eight patients died of relapsed disease; 15 died of transplant complications but in six the original malignancy persisted or had recurred at the time of death. Overall transplant-related mortality was 15%. We conclude that the toxicity of this regimen has not been high, with the liver being the most seriously affected organ. A longer follow-up is necessary to assess long-term consequences.

Adult↗